High temperature far infrared insulated energy-saving paint and method for preparing same
An energy-saving coating and far-infrared technology, applied in the direction of cellulose coating, coating, etc., can solve the problems of unsatisfactory adhesion and permeability of the refractory material matrix, the inability to tightly bond the refractory material matrix, and the inability to use the refractory material matrix. Achieve the effects of wide application range, good air tightness and good energy saving effect
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Embodiment 1
[0035] The preparation method is as described above, and the weight component ratio of each composition is as follows:
[0036] Zircon sand 300 parts Alumina 240 parts
[0037] Kaolin 240 parts Lanthanum oxide (la 2 o 3 ) 100 copies
[0038] Boron nitride 10 parts Silica sol 30 parts
[0039] 30 parts of water glass 7.5 parts of methyl cellulose
Embodiment 2
[0041] The preparation method is the same as that of Example 1, except that the proportioning by weight of each composition changes as follows:
[0042] Zircon sand 400 parts Alumina 350 parts
[0043] 150 parts of kaolin Cerium oxide (ceO 2 ) 50 copies
[0044] Boron nitride 3 parts Phosphoric acid 50 parts.
Embodiment 3
[0046] The preparation method is the same as that of Example 1, except that the proportioning by weight of each composition changes as follows:
[0047] Zircon sand 150 parts Alumina 100 parts
[0048] Kaolin 350 parts Praseodymium oxide (P r6 o 11 ) 200 copies
[0049] 25 parts of boron nitride 60 parts of water glass
[0050] 60 parts of silica sol 24 parts of methyl cellulose.
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